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    • 1. 发明申请
    • Sampling unit for concentrates preparation device
    • 浓缩液准备装置采样单元
    • US20160153879A1
    • 2016-06-02
    • US14953298
    • 2015-11-27
    • Gong Zhu
    • Gong Zhu
    • G01N1/40
    • G01N1/4022G01N2001/4033
    • The invention relates to a sampling unit for the concentrates preparation device. The unit comprises a base body, a movable rod, a limiting pin, a sampling chamber, a sampling bore, an axle sleeve and an isobaric chamber. The sampling chamber passes through the upper and lower surfaces of the base body, the isobaric chamber is a cylindrical blind bore, the isobaric chamber passes through the front surface of the base body and passes through the front and back surfaces of the sampling chamber. The axle sleeve has an interference fitting with the isobaric chamber, the movable rod hermetically slidingly mates with the axle sleeve, the head and tail ends of the gas permeable passage respectively communicate with the isobaric chamber and the outside. Concentrates can be taken out through the sampling bore of the sampling unit, the movable rod can take samples freely with the help of gas permeable passage for keeping the pressure balance of ends of the movable rod.
    • 本发明涉及一种用于浓缩物制备装置的取样单元。 该单元包括基体,可动杆,限位销,取样室,取样孔,轴套和等压室。 采样室通过基体的上表面和下表面,等压室是圆柱形盲孔,等压室通过基体的前表面并通过取样室的前表面和后表面。 轴套具有与等压室的过盈配合,可动杆与轴套气密地滑动配合,气体可渗透通道的头端和尾端分别与等压室和外部连通。 浓缩液可以通过采样单元的采样孔取出,活动杆可借助气体通道自由取样,以保持活动杆端部的压力平衡。
    • 3. 发明申请
    • Electrothermal Vaporization Atomic Fluorescence Spectroscopy and Spectrometer for Determination of Cadmium
    • 电热蒸发原子荧光光谱和镉测定光谱仪
    • US20130119271A1
    • 2013-05-16
    • US13810147
    • 2010-07-15
    • Jixin LiuLi Feng
    • Jixin LiuLi Feng
    • G01J3/44
    • G01J3/4406G01N1/4022G01N21/6402G01N2001/4033G01N2021/6417
    • An electrothermal vaporization atomic fluorescence spectrometer for determination of Cadmium comprising a sampling system, a light source, an atomizer, a light path system, a detection system, and a display device. The sampling system includes an electrothermal vaporization device and a capture trap; the capture trap comprises a Tungsten or Molybdenum coil (6), a holder (15), a cover (7) and a power supply (17); the cover (7) and the holder (15) form a sealed space; the Tungsten or Molybdenum coil (6) is arranged on the holder (15); the Tungsten or Molybdenum coil (6) is located inside the sealed space formed by the cover (7) and the holder (15); and the cover (7) is provided with an inlet (12) and an outlet (13) thereon. An electrothermal vaporization atomic fluorescence spectroscopy for determination of Cadmium is also provided.
    • 一种用于测定镉的电热蒸发原子荧光光谱仪,包括采样系统,光源,雾化器,光路系统,检测系统和显示装置。 采样系统包括电热蒸发装置和捕集阱; 捕获阱包括钨或钼线圈(6),保持器(15),盖(7)和电源(17); 盖(7)和保持器(15)形成密封空间; 钨或钼线圈(6)布置在支架(15)上; 钨或钼线圈(6)位于由盖(7)和保持器(15)形成的密封空间的内部; 并且盖(7)上设置有入口(12)和出口(13)。 还提供了用于测定镉的电热蒸发原子荧光光谱。
    • 4. 发明授权
    • Device for detecting micro particles in gas and a method for fabricating the device
    • 用于检测气体中微粒子的装置及其制造方法
    • US08006541B2
    • 2011-08-30
    • US12145590
    • 2008-06-25
    • Yun Woo NamHyo-Il JungSeung Jae LeeHui-Sung Moon
    • Yun Woo NamHyo-Il JungSeung Jae LeeHui-Sung Moon
    • G01N1/00
    • G01N1/2214G01N15/0656G01N2001/4033
    • A device for detecting micro particles in gas, which comprises: an inlet through which a gaseous sample including micro particles flows in; an outlet through which the sample flows out; a channel through which the sample flows from the inlet toward the outlet; a cooling layer which cools and condenses the sample flowing in the channel; a reservoir which is positioned on the cooling layer and collects the condensed sample; a detector which is positioned in the reservoir on the cooling layer and detects the micro particles included in the collected sample; and a heater which heats the outlet portion to produce a pressure difference between the inlet portion and the outlet portion, so that the sample flows through the channel from the inlet toward the outlet. The device for detecting micro particles in gas provides the advantage that micro particles included in gaseous sample can be detected without having to use additional pump or collector, detection time can be reduced, and detection accuracy can be improved.
    • 一种用于检测气体中的微粒的装置,其包括:包含微粒子的气态样品流入的入口; 样品流出的出口; 样品从入口流向出口的通道; 冷却层,冷凝和冷凝在通道中流动的样品; 储存器,其位于冷却层上并收集冷凝样品; 检测器,其位于冷却层上的储存器中,并检测收集的样品中包含的微粒子; 以及加热器,其加热出口部分以在入口部分和出口部分之间产生压力差,使得样品从入口朝向出口流过通道。 用于检测气体中的微粒的装置提供了这样的优点,即可以检测气态样品中包含的微粒,而不必使用附加的泵或集电器,可以减少检测时间,并且可以提高检测精度。
    • 5. 发明申请
    • DEVICE FOR DETECTING MICRO PARTICLES IN GAS AND A METHOD FOR FABRICATING THE DEVICE
    • 用于检测气体中的微粒子的装置和用于制造装置的方法
    • US20090282899A1
    • 2009-11-19
    • US12145590
    • 2008-06-25
    • Yun Woo NamHyo-Il JungSeung Jae LeeHui-Sung Moon
    • Yun Woo NamHyo-Il JungSeung Jae LeeHui-Sung Moon
    • G01N9/00
    • G01N1/2214G01N15/0656G01N2001/4033
    • A device for detecting micro particles in gas, which comprises: an inlet through which a gaseous sample including micro particles flows in; an outlet through which the sample flows out; a channel through which the sample flows from the inlet toward the outlet; a cooling layer which cools and condenses the sample flowing in the channel; a reservoir which is positioned on the cooling layer and collects the condensed sample; a detector which is positioned in the reservoir on the cooling layer and detects the micro particles included in the collected sample; and a heater which heats the outlet portion to produce a pressure difference between the inlet portion and the outlet portion, so that the sample flows through the channel from the inlet toward the outlet. The device for detecting micro particles in gas provides the advantage that micro particles included in gaseous sample can be detected without having to use additional pump or collector, detection time can be reduced, and detection accuracy can be improved.
    • 一种用于检测气体中的微粒的装置,其包括:包含微粒子的气态样品流入的入口; 样品流出的出口; 样品从入口流向出口的通道; 冷却层,冷凝和冷凝在通道中流动的样品; 储存器,其位于冷却层上并收集冷凝样品; 检测器,其位于冷却层上的储存器中,并检测收集的样品中包含的微粒子; 以及加热器,其加热出口部分以在入口部分和出口部分之间产生压力差,使得样品从入口朝向出口流过通道。 用于检测气体中的微粒的装置提供了这样的优点,即可以检测气态样品中包含的微粒,而不必使用附加的泵或集电器,可以减少检测时间,并且可以提高检测精度。
    • 9. 发明申请
    • Device and method for measuring elemental sulfur in gas in gas lines
    • 在气体管线中测量气体中的元素硫的装置和方法
    • US20050095721A1
    • 2005-05-05
    • US10957564
    • 2004-10-01
    • Ihsan Al-TaieAbdulaziz Al-MathamiHelal Al-Mutairi
    • Ihsan Al-TaieAbdulaziz Al-MathamiHelal Al-Mutairi
    • B01D53/00C01B17/02G01N1/10G01N1/22G01N1/40G01N33/00
    • C01B17/021G01N1/22G01N1/2202G01N1/2214G01N1/2247G01N33/0044G01N2001/1062G01N2001/2282G01N2001/4033Y10T436/18Y10T436/188
    • A device and method for measuring the level of elemental sulfur present in a gas in a gas line. The device may include: an access fitting detachably connectable with the gas line, the access fitting having a first end and a second end; a probe detachably connectable to at least one end of the access fitting and adapted for insertion into a gas flow stream from the gas line to recover condensed components on the probe's outer surface; and a piping partially disposed within the probe for providing a cooling medium to the probe. The method may include the steps of: collecting a sample of elemental sulfur-containing gas from the gas line, wherein the sample is collected on an outer surface of a probe by condensing some or all of the elemental sulfur-containing gas in the gas line on a surface of the probe while the gas line is operational, the probe being removably placed into a gas flow stream from the gas line; separating the elemental sulfur from other species in the sample into an amount of elemental sulfur; and analyzing the amount of elemental sulfur collected. The device and method of the present invention for measuring the level of elemental sulfur present in a gas in a gas line, when compared with previously proposed devices and methods, has the advantages of: providing an accurate measurement of elemental sulfur, being able to distinguish between free elemental sulfur and sulfur in other sulfur-containing chemicals, and being practical and effective for use in process plant applications, particularly pressurized gas lines.
    • 用于测量气体管线中气体中存在的元素硫的水平的装置和方法。 该装置可以包括:可拆卸地与气体管线连接的通道配件,该接入配件具有第一端和第二端; 可拆卸地连接到进入配件的至少一个端部并且适于从气体管线插入到气体流中的探针,以回收探针外表面上的冷凝部件; 以及部分地设置在所述探针内的用于向所述探针提供冷却介质的管道。 该方法可以包括以下步骤:从气体管线收集元素含硫气体的样品,其中通过将气体管线中的一些或全部元素含硫气体收集在探针的外表面上, 在气体管线可操作时在探针的表面上,探针可移除地放置在气体管线的气流中; 将元素硫与样品中的其他物质分离成一定量的元素硫; 并分析收集的元素硫的量。 与先前提出的装置和方法相比,用于测量气体管线中气体中存在的元素硫的水平的本发明的装置和方法具有以下优点:提供元素硫的精确测量,能够区分 在其他含硫化学品中的自由元素硫和硫之间,并且在实际和有效的用于过程工厂应用,特别是加压气体管线中。